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Variability in spectral backscatter estimated from satellites and its relation to in situ measurements in optically complex coastal waters

机译:卫星估算的光谱反向散射的变化及其与光学复杂的沿海水域的原位测量的关系

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A large database of in situ bio-optical measurements was collected at the Long-term Ecosystem Observatory off the southern coast of New Jersey, USA. In part, the research effort focused on reconciling in situ estimates with satellite-derived estimates of the inherent optical properties (IOP). At 442 nm, in situ absorption values ranged from less than 0.2 to over 1.5 inverse metres. Satellite estimates of backscatter ranged from 0.002 to 0.03 inverse metres at 442 nm and showed significant variability in time and space during July 1999, reflecting the recurrent high frequency events that characterize the region-wind-mixing, storms and coastal upwelling. Despite this variability, there was good qualitative agreement between the satellite derived IOP estimates and in situ IOP measurements. Both absorption and backscatter values increased near-shore, reflecting enhanced concentrations of phytoplankton, sediments and dissolved organic matter.
机译:在美国新泽西州南部海岸的长期生态系统观测站收集了大量的原位生物光学测量数据库。在某种程度上,研究工作着重于将原位估计与固有光学特性(IOP)的卫星衍生估计值进行协调。在442 nm处,原位吸收值范围从小于0.2到超过1.5反米。卫星对后向散射的估计值在442 nm处从0.002到0.03倒米,并且在1999年7月期间显示出时间和空间上的显着变化,反映出经常性的高频事件,这些事件是区域风混,风暴和沿海上升的特征。尽管存在这种可变性,但卫星得出的IOP估算值与现场IOP测量值之间存在良好的定性一致性。近岸的吸收值和反向散射值均增加,反映出浮游植物,沉积物和溶解有机物的浓度增加。

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